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1 /* -*- c-basic-offset: 4 indent-tabs-mode: nil -*- vi:set ts=8 sts=4 sw=4: */
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2
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3 /*
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4 Sonic Visualiser
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5 An audio file viewer and annotation editor.
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6 Centre for Digital Music, Queen Mary, University of London.
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7 This file copyright 2006 Chris Cannam and QMUL.
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8
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9 This program is free software; you can redistribute it and/or
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10 modify it under the terms of the GNU General Public License as
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11 published by the Free Software Foundation; either version 2 of the
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12 License, or (at your option) any later version. See the file
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13 COPYING included with this distribution for more information.
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14 */
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15
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16 #include "WavFileReader.h"
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17
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18 #include "base/HitCount.h"
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19 #include "base/Profiler.h"
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20
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21 #include <iostream>
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22
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23 #include <QMutexLocker>
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24 #include <QFileInfo>
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25
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26 using namespace std;
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27
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28 WavFileReader::WavFileReader(FileSource source,
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29 bool fileUpdating,
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30 Normalisation normalisation) :
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31 m_file(nullptr),
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32 m_source(source),
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33 m_path(source.getLocalFilename()),
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34 m_seekable(false),
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35 m_lastStart(0),
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36 m_lastCount(0),
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37 m_normalisation(normalisation),
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38 m_max(0.f),
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39 m_updating(fileUpdating)
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40 {
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41 m_frameCount = 0;
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42 m_channelCount = 0;
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43 m_sampleRate = 0;
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44
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45 m_fileInfo.format = 0;
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46 m_fileInfo.frames = 0;
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47
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48 #ifdef Q_OS_WIN
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49 m_file = sf_wchar_open((LPCWSTR)m_path.utf16(), SFM_READ, &m_fileInfo);
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50 #else
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51 m_file = sf_open(m_path.toLocal8Bit(), SFM_READ, &m_fileInfo);
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52 #endif
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53
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54 if (!m_file || (!fileUpdating && m_fileInfo.channels <= 0)) {
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55 SVDEBUG << "WavFileReader::initialize: Failed to open file at \""
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56 << m_path << "\" ("
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57 << sf_strerror(m_file) << ")" << endl;
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58
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59 if (m_file) {
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60 m_error = QString("Couldn't load audio file '%1':\n%2")
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61 .arg(m_path).arg(sf_strerror(m_file));
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62 } else {
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63 m_error = QString("Failed to open audio file '%1'")
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64 .arg(m_path);
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65 }
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66 return;
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67 }
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68
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69 if (m_fileInfo.channels > 0) {
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70
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71 m_frameCount = m_fileInfo.frames;
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72 m_channelCount = m_fileInfo.channels;
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73 m_sampleRate = m_fileInfo.samplerate;
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74
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75 m_seekable = (m_fileInfo.seekable != 0);
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76
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77 int type = m_fileInfo.format & SF_FORMAT_TYPEMASK;
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78 int subtype = m_fileInfo.format & SF_FORMAT_SUBMASK;
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79
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80 if (type >= SF_FORMAT_FLAC || type >= SF_FORMAT_OGG) {
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81 // Our m_seekable reports whether a file is rapidly
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82 // seekable, so things like Ogg don't qualify. We
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83 // cautiously report every file type of "at least" the
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84 // historical period of Ogg or FLAC as non-seekable.
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85 m_seekable = false;
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86 } else if (type == SF_FORMAT_WAV && subtype <= SF_FORMAT_DOUBLE) {
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87 // libsndfile 1.0.26 has a bug (subsequently fixed in the
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88 // repo) that causes all files to be reported as
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89 // non-seekable. We know that certain common file types
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90 // are definitely seekable so, again cautiously, identify
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91 // and mark those (basically only non-adaptive WAVs).
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92 m_seekable = true;
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93 }
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94
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95 if (m_normalisation != Normalisation::None && !m_updating) {
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96 m_max = getMax();
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97 }
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98 }
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99
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100 SVDEBUG << "WavFileReader: Filename " << m_path << ", frame count " << m_frameCount << ", channel count " << m_channelCount << ", sample rate " << m_sampleRate << ", format " << m_fileInfo.format << ", seekable " << m_fileInfo.seekable << " adjusted to " << m_seekable << ", normalisation " << int(m_normalisation) << endl;
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101 }
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102
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103 WavFileReader::~WavFileReader()
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104 {
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105 if (m_file) sf_close(m_file);
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106 }
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107
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108 void
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109 WavFileReader::updateFrameCount()
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110 {
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111 QMutexLocker locker(&m_mutex);
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112
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113 sv_frame_t prevCount = m_fileInfo.frames;
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114
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115 if (m_file) {
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116 sf_close(m_file);
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117 #ifdef Q_OS_WIN
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118 m_file = sf_wchar_open((LPCWSTR)m_path.utf16(), SFM_READ, &m_fileInfo);
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119 #else
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120 m_file = sf_open(m_path.toLocal8Bit(), SFM_READ, &m_fileInfo);
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121 #endif
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122 if (!m_file || m_fileInfo.channels <= 0) {
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123 SVDEBUG << "WavFileReader::updateFrameCount: Failed to open file at \"" << m_path << "\" ("
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124 << sf_strerror(m_file) << ")" << endl;
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125 }
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126 }
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127
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128 // SVDEBUG << "WavFileReader::updateFrameCount: now " << m_fileInfo.frames << endl;
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129
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130 m_frameCount = m_fileInfo.frames;
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131
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132 if (m_channelCount == 0) {
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133 m_channelCount = m_fileInfo.channels;
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134 m_sampleRate = m_fileInfo.samplerate;
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135 }
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136
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137 if (m_frameCount != prevCount) {
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138 emit frameCountChanged();
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139 }
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140 }
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141
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142 void
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143 WavFileReader::updateDone()
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144 {
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145 updateFrameCount();
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146 m_updating = false;
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147 if (m_normalisation != Normalisation::None) {
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148 m_max = getMax();
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149 }
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150 }
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151
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152 floatvec_t
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153 WavFileReader::getInterleavedFrames(sv_frame_t start, sv_frame_t count) const
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154 {
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155 floatvec_t frames = getInterleavedFramesUnnormalised(start, count);
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156
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157 if (m_normalisation == Normalisation::None || m_max == 0.f) {
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158 return frames;
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159 }
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160
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161 for (int i = 0; in_range_for(frames, i); ++i) {
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162 frames[i] /= m_max;
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163 }
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164
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165 return frames;
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166 }
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167
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168 floatvec_t
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169 WavFileReader::getInterleavedFramesUnnormalised(sv_frame_t start,
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170 sv_frame_t count) const
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171 {
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172 static HitCount lastRead("WavFileReader: last read");
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173
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174 if (count == 0) return {};
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175
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176 QMutexLocker locker(&m_mutex);
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177
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178 Profiler profiler("WavFileReader::getInterleavedFrames");
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179
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180 if (!m_file || !m_channelCount) {
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181 return {};
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182 }
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183
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184 if (start >= m_fileInfo.frames) {
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185 // SVDEBUG << "WavFileReader::getInterleavedFrames: " << start
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186 // << " > " << m_fileInfo.frames << endl;
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187 return {};
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188 }
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189
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190 if (start + count > m_fileInfo.frames) {
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191 count = m_fileInfo.frames - start;
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192 }
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193
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194 // Because WaveFileModel::getSummaries() is called separately for
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195 // individual channels, it's quite common for us to be called
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196 // repeatedly for the same data. So this is worth cacheing.
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197 if (start == m_lastStart && count == m_lastCount) {
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198 lastRead.hit();
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199 return m_buffer;
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200 }
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201
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202 // We don't actually support partial cache reads, but let's use
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203 // the term partial to refer to any forward seek and consider a
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204 // backward seek to be a miss
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205 if (start >= m_lastStart) {
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206 lastRead.partial();
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207 } else {
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208 lastRead.miss();
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209 }
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210
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211 if (sf_seek(m_file, start, SEEK_SET) < 0) {
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212 return {};
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213 }
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214
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215 floatvec_t data;
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216 sv_frame_t n = count * m_fileInfo.channels;
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217 data.resize(n);
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218
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219 m_lastStart = start;
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220 m_lastCount = count;
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221
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222 sf_count_t readCount = 0;
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223 if ((readCount = sf_readf_float(m_file, data.data(), count)) < 0) {
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224 return {};
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225 }
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226
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227 m_buffer = data;
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228 return data;
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229 }
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230
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231 float
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232 WavFileReader::getMax() const
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233 {
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234 if (!m_file || !m_channelCount) {
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235 return 0.f;
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236 }
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237
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238 // First try for a PEAK chunk
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239
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240 double sfpeak = 0.0;
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241 if (sf_command(m_file, SFC_GET_SIGNAL_MAX, &sfpeak, sizeof(sfpeak))
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242 == SF_TRUE) {
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243 SVDEBUG << "File has a PEAK chunk reporting max level " << sfpeak
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244 << endl;
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245 return float(fabs(sfpeak));
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246 }
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247
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248 // Failing that, read all the samples
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249
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250 float peak = 0.f;
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251 sv_frame_t ix = 0, chunk = 65536;
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252
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253 while (ix < m_frameCount) {
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254 auto frames = getInterleavedFrames(ix, chunk);
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255 for (float x: frames) {
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256 float level = fabsf(x);
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257 if (level > peak) {
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258 peak = level;
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259 }
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260 }
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261 ix += chunk;
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262 }
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263
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264 SVDEBUG << "Measured file peak max level as " << peak << endl;
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265 return peak;
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266 }
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267
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268 void
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269 WavFileReader::getSupportedExtensions(set<QString> &extensions)
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270 {
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271 int count;
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272
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273 if (sf_command(nullptr, SFC_GET_FORMAT_MAJOR_COUNT, &count, sizeof(count))) {
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274 extensions.insert("wav");
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275 extensions.insert("aiff");
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276 extensions.insert("aifc");
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277 extensions.insert("aif");
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278 return;
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279 }
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280
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281 SF_FORMAT_INFO info;
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282 for (int i = 0; i < count; ++i) {
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283 info.format = i;
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284 if (!sf_command(nullptr, SFC_GET_FORMAT_MAJOR, &info, sizeof(info))) {
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285 QString ext = QString(info.extension).toLower();
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286 extensions.insert(ext);
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287 if (ext == "oga") {
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288 // libsndfile is awfully proper, it says it only
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289 // supports .oga but lots of Ogg audio files in the
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290 // wild are .ogg and it will accept that
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291 extensions.insert("ogg");
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292 }
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293 }
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294 }
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295 }
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296
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297 bool
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298 WavFileReader::supportsExtension(QString extension)
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299 {
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300 set<QString> extensions;
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301 getSupportedExtensions(extensions);
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302 return (extensions.find(extension.toLower()) != extensions.end());
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303 }
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304
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305 bool
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306 WavFileReader::supportsContentType(QString type)
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307 {
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308 return (type == "audio/x-wav" ||
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309 type == "audio/x-aiff" ||
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310 type == "audio/basic");
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311 }
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312
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313 bool
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314 WavFileReader::supports(FileSource &source)
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315 {
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316 return (supportsExtension(source.getExtension()) ||
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317 supportsContentType(source.getContentType()));
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318 }
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319
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320
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